IP Library Granted Patent US 10,537,089
Granted Patent B2
US 10,537,089 · App. 15/353,192 · Granted Jan 21, 2020

Waste heat recovery systems and methods for a livestock barn

Inventors: Tingsheng Xu (Columbia, MO); Yunsheng Xu (Columbia, MO)
Assignees: The Curators of the University of Missouri; Heartland Farm Energy LLC
A01K1/0076F28D7/1623F28D21/0014F28F9/187F28F9/26F28F21/062
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Quick Facts
Patent No.
US 10,537,089
App. No.
15/353,192
Granted
Jan 21, 2020
Kind
B2
Abstract

A system and method for thermally exchanging heat between waste air being expelled from a poultry barn and fresh outside/outdoor ambient air being introduced into the poultry barn.

Claims (21)

1. A method for controlling a temperature within a livestock barn, said method comprising:

disposing a thermal exchange system on any desired location along an exterior of the livestock barn

fluidly connecting the thermal exchange system to an interior of the livestock barn, the thermal exchange system comprising:

a main cabinet, the main cabinet comprising:

a fresh air flow inlet fluidly connected to an ambient outdoor environment;

a fresh air flow outlet fluidly connected to the interior of the livestock barn;

a waste air flow inlet fluidly connected to the interior of the livestock barn;

a waste air flow outlet fluidly connected to the ambient outdoor environment; and

at least one access panel removably covering at least one access opening;

at least two tube bundle cells removably disposed within the main cabinet via the at least one access opening, each tube bundle cell comprising;

a first end panel and an opposing second end panel, each of the first and second end panels having a plurality of holes extending therethrough: and

a plurality of tubes, each tube having a first end connected nonorthogonally to the first end panel at one of the holes, and a second end connected nonorthogonally to the opposing second end panel at a corresponding one of the holes such that the first and second end panels are nonorthogonally connected to the tubes relative to a longitudinal axes of the tubes, and each tube is arranged parallel with and spaced apart from all the other tubes within the tube bundle cell, each tube further having an exterior surface and an interior lumen extending therethrough;

at least two isosceles triangle shaped air turning compartments disposed at opposing ends of the at least two tube bundles;

at least one waste air fan; and

at least one fresh air fan;

generating and controlling a waste air flow utilizing the least one waste air fan, wherein the waste air flow comprises waste air that is drawn from inside the livestock barn into the waste air inlet;

passing the waste air flow around the exterior surfaces of the tubes of the at least two tube bundle cell, and exhausting the waste air flow out the waste air outlet into the ambient outdoor environment;

generating and controlling a fresh air flow utilizing the at least one fresh air fan, wherein the fresh air flow comprises fresh air that is drawn from the ambient outdoor environment into the fresh air inlet;

passing the fresh air flow through the interior lumens of the tubes of a first one of the at least two tube bundles, through one of the at least two isosceles triangle shaped air turning compartments, through the interior lumens of the tubes of a second one of the at least two tube bundles, and exhausting the fresh air flow out the fresh air outlet into the interior of the livestock barn; and

controlling, via control of the waste air flow and the fresh air flow, a thermal exchange between the waste air flow and the fresh air flow to change the temperature of the fresh air flow forced into the interior of the livestock barn.

2. The method of claim 1 , wherein controlling a thermal exchange between the waste air flow and the fresh air flow, via control of the waste air flow and the fresh air flow, comprises controlling the waste air flow and the fresh air flow, via control of the at least one waste air fan and the at least one fresh air fan, to increase a temperature within the main cabinet to defrost the tubes of the at least two tube bundle cell.

Assignments (2)
CONFIRMATORY LICENSE Recorded Jan 22, 2019
From: UNIVERSITY OF MISSOURI-COLUMBIA
To: UNITED STATES DEPARTMENT OF ENERGY
Reel/Frame 048105/0821 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 21, 2017
From: XU, TINGSHENG
To: THE CURATORS OF THE UNIVERSITY OF MISSOURI
Reel/Frame 041314/0488 →
Priority Claims (1)
CN 2013 2 0067905 U · Feb 6, 2013 · national
Continuity (2)
Continuation In Part 14172893 · Feb 4, 2014
Related Publication 20170064920A1 · Mar 9, 2017